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March 18, 20260 citationsOpen Access

Emergence of Physical Structures from Geometric Resonance Fields

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DSDaniel Speckmann

Key Points

  • This work aims to reformulate particle physics and cosmology through an emergent resonance framework.
  • Proposed the Emergent Resonance-Brane (ERB) model for particle physics and cosmology.
  • Presented numerical evidence from a resonance field defined on a lattice.
  • Analyzed geometric overlap integrals of localized resonance modes to derive the CKM matrix.
  • Quantified CP violation using the Jarlskog invariant.
  • Observed a mean absolute error (MAE) of 0.001786 in quark mixing predictions.
  • Identified CP violation as a geometric constant of the resonance field.
  • Proposed a connection between resonance defects and gravitational effects resembling dark matter.
  • Presented a framework that suggests background fluctuations could explain dark energy.

Abstract

Emergence of Physical Structures from Geometric Resonance Fields The Emergent Resonance-Brane (ERB) model proposes a reformulation of particle physics and cosmology in which matter, symmetries, and spacetime dynamics appear as emergent properties of a discrete complex resonance field defined on a lattice. The central idea of this work is that parameters traditionally treated as fundamental constants of the Standard Model may arise from the topology and geometry of the underlying resonance field. In particular, we present numerical evidence that the hierarchical structure of the Cabibbo-Kobayashi-Maskawa (CKM) matrix can emerge from geometric overlap integrals of localized resonance modes (vortices). The model reproduces the experimental quark mixing pattern with a mean absolute error (MAE) of 0. 001786. Within this framework CP violation, quantified by the Jarlskog invariant (J 3 10^-5), appears as a geometric constant associated with the fundamental phase of the resonance field. The ERB framework further suggests a cosmological interpretation: localized energetic defects of the resonance field generate gravitational effects resembling dark matter, while diffuse background fluctuations produce a weak large-scale expansion component analogous to dark energy. By providing the complete simulation code used in this study, the work establishes a transparent and reproducible basis for exploring this unified resonance-based framework. The ERB model therefore offers a potential bridge between particle physics and cosmology based on the simple principle of geometric resonance.

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Cite This Study

Daniel Speckmann (2026) studied this question.

synapsesocial.com/papers/69ba44084e9516ffd37a5da3https://doi.org/10.5281/zenodo.19046898
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Emergent Vacuum Resonances and the Geometric Derivation of Physical Observables: A Formalized Draft of the ERB Framework2026
  2. 2The Emergent Resonant Brane Framework (v48): Analytical Closure of the Standard Model and Cosmological Sectors via a Single Geometric Seed2026
  3. 3The Emergent Resonant Brane (ERB) Framework: Geometric Parameter Scaling and CKM Matrix Dynamics (Diamond Edition v54)2026
  4. 4Emergent Resonant Brane Framework - A Formal Field-Theoretic and Statistical Draft2026
  5. 5The ERB Framework: Deriving the Standard Model Flavor Hierarchy from a Single Mechanical Postulate - Renormalized Structure of Quantum Field Theory2026